Metal germylyne complexes [M≡Ge-R] and metallogermylenes [M-Ge-R]: DFT analysis of the systems [(Cp)(CO)nM≡GeMe] (M = Cr, Mo, W, Fe2+, n = 2; M = Fe, n = 1) and [(Cp)(CO)nM-GeMe] (M = Cr, Mo, W, n = 3; M = Fe, n = 2)

Krishna K. Pandey, Matthias Lein, Gernot Frenking

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Abstract

Quantum chemical calculations at the gradient corrected DFT level using the exchange correlation functionals BP86 and B3LYP of the geometries of the title compounds are reported. The theoretically predicted bond lengths and angles of the model compounds are in excellent agreement with experiment. The nature of the metal-ligand interactions is quantitatively analyzed with an energy decomposition method. The analysis of the electronic structure of the neutral metal germylyne complexes Ia-Id and the metallogermylenes IIa-IId shows that the former compounds have about the same degree of electrostatic and covalent bonding, while the relative strength of the covalent contributions in the latter molecules is lower (41-42%) than the electrostatic attraction (58-59%). The a″(π) bonding contribution in the group-6 germylyne complexes Ia-Ic is rather high (42% of the orbital interactions). In the iron complex Id, it is even higher (53.8%) than the σ bonding. The π bonding contributions to the covalent bonding become much less (18-20%) in the metallogermylenes IIa-IId.

Original languageEnglish
Pages (from-to)1660-1668
Number of pages9
JournalJournal of the American Chemical Society
Volume125
Issue number6
DOIs
StatePublished - 12 Feb 2003
Externally publishedYes

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